References
- 1. A. A. S. Pereira, E. de Castro Ferreira, A. C. V. M. da Rocha Lima, G. B. Tonelli, F. D. Rêgo, A. P. Paglia, J. D. Andrade-Filho, G. F. Paz and C. M. F. Gontijo, Detection of Leishmania spp in silvatic mammals and isolation of Leishmania (Viannia) braziliensis from Rattus rattus in an endemic area for leishmaniasis in Minas Gerais State, Brazil, PLoS One12 (2017) e0187704 (9 pages); https://doi.org/10.1371/journal.pone.018770410.1371/journal.pone.0187704570352929176902
- 2. I. Bennis, S. Thys, H. Filali, V. de Brouwere, H. Sahibi and M. Boelaert, Psychosocial impact of scars due to cutaneous leishmaniasis on high school students in Errachidia province, Morocco, Infect. Dis. Pov.6 (2017) Article ID 46 (8 pages); https://doi.org/10.1186/s40249-017-0267-510.1186/s40249-017-0267-5538395528385151
- 3. World Health Organization (WHO), Leishmaniasis, Copenhagen 2020; http://www.who.int/media-centre/factsheets/fs375/en/; last access date June 16, 2020
- 4. M. Khraiwesh, S. Leed, N. Roncal, J. Johnson, R. Sciotti, P. Smith, L. Read, R. Paris, T. Hudson, M. Hickman and M. Grogl, Antileishmanial activity of compounds derived from the medicines for malaria venture open access box against intracellular Leishmania major amastigotes, Am. J. Trop. Med. Hyg.94 (2016) 340–347; https://doi.org/10.4269/ajtmh.15-044810.4269/ajtmh.15-0448475193926503273
- 5. R. Delgado-Altamirano, L. Monzote, A. Piñón-Tápanes, H. Vibrans, J. F. Rivero-Cruz, C. Ibarra-Alvarado and A. Rojas-Molina, In vitro antileishmanial activity of Mexican medicinal plants, Heliyon3 (2017) e00394 (19 pages); https://doi.org/10.1016/j.heliyon.2017.e0039410.1016/j.heliyon.2017.e00394559630828932821
- 6. G. M. Cragg and D. J. Newman, Natural products: A continuing source of novel, Biochim. Biophys. Acta1830 (2013) 3670–3695; https://doi.org/10.1016/j.bbagen.2013.02.00810.1016/j.bbagen.2013.02.008367286223428572
- 7. B. B. Jensen, C. D. Comandolli-Wyrepkowski, A. M. C. Barros, F. V. Soares, I. Grafova, A. Grafov and A. M. R. Franco, Evaluation of activity anti-Leishmania in vitro of Tanacetum vulgare (Asteraceae), Acta Bras.1 (2017) 33–37; https://doi.org/10.22571/Actabra1220171610.22571/Actabra12201716
- 8. A. G. Brenton and A. R. Godfrey, Accurate mass measurement: Terminology and treatment of data, J. Am. Soc. Mass Spectrom.21 (2010) 1821–1835; https://doi.org/10.1016/j.jasms.2010.06.00610.1016/j.jasms.2010.06.00620650651
- 9. V. M. Marcussi, L. M. Marcussi, I. P. Barbosa-Tessmann, M. V. C. Lonardoni and T. G. V Silveira, Leishmania (Viannia) braziliensis: New primers for identification using polymerase chain reaction, Exp. Parasitol.120 (2008) 300–305; https://doi.org/10.1016/j.exppara.2008.08.00510.1016/j.exppara.2008.08.00518786532
- 10. C. Williams, O. A. Espinosa, H. Montenegro, L. Cubilla, T. L. Capson, E. Ortega-Barrıa and L. I. Romero, Hydrosoluble formazan XTT: its application to natural products drug discovery for Leish-mania, J. Microbiol. Methods55 (2003) 813–816; https://doi.org/10.1016/J.MIMET.2003.08.01310.1016/j.mimet.2003.08.01314607426
- 11. R. H. Valdez, L. T. D. Tonin, T. Ueda-Nakamura, B. P. D. Filho, J. A. Morgado-Diaz, M. H. Sarragiotto and C. V. Nakamura, Biological activity of 1,2,3,4-tetrahydro-β-carboline-3-carboxamides against Trypanosoma cruzi, Acta Trop.110 (2009) 7–14; https://doi.org/10.1016/J.ACTATROPICA.2008.11.00810.1016/j.actatropica.2008.11.00819063858
- 12. Y. Gavamukulya, F. Wamunyokoli and H. A. El-Shemy, Annona muricata: Is the natural therapy to most disease conditions including cancer growing in our backyard? A systematic review of its research history and future prospects, Asian Pac. J. Trop. Med.10 (2017) 835–848; https://doi.org/10.1016/j.apjtm.2017.08.00910.1016/j.apjtm.2017.08.009
- 13. L. C. T. Thiesen, E. Y. Y. Sugauara, V. Tešević, J. Glamočlija, M. Soković, J. E. Gonçalves, Z. C. Gazim, G. A. Linde and N. B. Colauto, Antimicrobial activity and chemical composition of Brunfelsia uni-flora flower oleoresin extracted by supercritical carbon dioxide, Genet. Mol. Res.16 (2017) Article ID 16029548 (12 pages); https://doi.org/10.4238/gmr1602954810.4238/gmr16029548
- 14. P. R. Orsi, L. N. Seito, L. Claudio and D. Stasi, Hymenaea stigonocarpa Mart. ex Hayne: A tropical medicinal plant with intestinal anti-inflammatory activity in TNBS model of intestinal inflammation in rats, J. Ethnopharmacol.151 (2014) 380–385; https://doi.org/10.1016/j.jep.2013.10.05610.1016/j.jep.2013.10.056
- 15. J. J. M. M. Andrade, A. L. Aboy, M. A. Apel, M. C. B. Raseira, J. F. M. Pereira and A. T. Henriques, Phenolic composition in different genotypes of guabiju fruits (Myrcianthes pungens) and their potential as antioxidant and antichemotactic agents, J. Food Sci.76 (2011) 1181–1187; https://doi.org/10.1111/j.1750-3841.2011.02375.x10.1111/j.1750-3841.2011.02375.x
- 16. F. R. Garcez, W. S. Gacez, L. Hamerski and C. H. Miguita, Phenylpropanoids and other bioactive constituents from Nectandra megapotamica, Quim. Nova32 (2009) 407–411; https://doi.org/10.1590/S0100-4042200900020002610.1590/S0100-40422009000200026
- 17. C. M. M. Fernandez-Andrade, K. Z. Bernuci, R. Y. Makimori and B. P. Dias, Atividade antifúngica do extrato hidroalcoólico de Piper corcovadensis (Miq.) C. DC., 6o Congresso Ciências Farmacêuticas do Mercosul, 6º Simpósio em Ciência e Tecnologia de Alimentos do Mercosul, Cascavel-Paraná-Brazil, November 16-18, 2016.
- 18. K. de S. Farias, S. A. Auharek, A. L. Cunha-Laura, J. M. E. de Souza, G. A. Damasceno-Junior, M. C. Toffoli-Kadri, W. F. de O. Filiú, E. dos A. dos Santos, M. R. Chang and C. A. Carollo, Adulteration and contamination of commercial sap of Hymenaea species, Evid.-Based Complement. Altern. Med.2017 (2017) Article ID 1919474 (13 pages); https://doi.org/10.1155/2017/191947410.1155/2017/1919474
- 19. P. C. Veggi, J. M. Prado, G. A. Bataglion, M. N. Eberlin and M. A. A. Meireles, Obtaining phenolic compounds from jatoba (Hymenaea courbaril L.) bark by supercritical fluid extraction, J. Supercrit. Fluids89 (2014) 68–77; https://doi.org/10.1016/j.supflu.2014.02.01610.1016/j.supflu.2014.02.016
- 20. K. Sasaki, Y. Matsukura, K. Shijima, M. Miyake, D. Fujiwara and Y. Konishi, High-performance liquid chromatographic purification of oligomeric procyanidins, trimers up to nonamers, derived from the bark of jatoba (Hymenaea courbaril), Biosci. Biotechnol. Biochem.73 (2014) 1274–1279; https://doi.org/10.1271/bbb.8074710.1271/bbb.80747
- 21. P. R. Orsi, F. Bonamin, J. A. Severi, R. C. Santos, W. Vilegas, C. A. Hiruma-Lima and L. C. Di Stasi, Hymenaea stigonocarpa Mart. ex Hayne: A Brazilian medicinal plant with gastric and duodenal anti-ulcer and antidiarrheal effects in experimental rodent models, J. Ethnopharmacol.143 (2012) 81–90; https://doi.org/10.1016/j.jep.2012.06.00110.1016/j.jep.2012.06.001
- 22. S. S. Costa and W. B. Mors, Amides of Ottonia corcovadensis, Phytochemistry20 (1981) 1305–1307; https://doi.org/10.1016/0031-9422(81)80027-110.1016/0031-9422(81)80027-1
- 23. V. A. Facundo, S. M. Morais and R. B. Filho, Chemical constituents of Ottonia corcovadensis Miq. from Amazon forest - 1H and 13C chemical shift assignments, Quim Nova27 (2004) 79–83; https://doi.org/10.1590/S0100-4042200400010001710.1590/S0100-40422004000100017
- 24. D. P. Bezerra, F. O. Castro, A. P. N. N. Alves, C. Pessoa, M. O. Moraes, E. R. Silveira, M. A. S. Lima, F. J. M. Elmiro and L. V. Costa-Lotufo, In vivo growth-inhibition of sarcoma 180 by piplartine and piperine, two alkaloid amides from Piper, Braz. J. Med. Biol. Res.39 (2006) 801–807; https://doi.org/10.1590/S0100-879X200600060001410.1590/S0100-879X2006000600014
- 25. R. Mata, I. Morales, O. Pérez, I. Rivero-Cruz, L. Acevedo, I. Enriquez-Mendoza, R. Bye, S. Franzblau and B. Timmermann, Antimycobacterial compounds from Piper sanctum, J. Nat. Prod.67 (2004) 1961–1968; https://doi.org/10.1021/np040126010.1021/np0401260
- 26. A. Matsushige, Y. Kotake, K. Matsunami, H. Otsuka, S. Ohta and Y. Takeda, Three new megastig-manes from the leaves of Annona muricata, J. Nat. Med.66 (2012) 284–291; https://doi.org/10.1007/s11418-011-0583-110.1007/s11418-011-0583-1
- 27. S. H. Park, H. S. Shin, N. H. Lee, I. K. Hong and S. N. Park, Cellular protective effects and mechanisms of kaempferol and nicotiflorin isolated from Annona muricata against 1O2-induced Damage, Appl. Chem. Eng.29 (2018) 49–55; https://doi.org/10.14478/ace.2017.1097
- 28. P. Dos S. da Rocha, J. F. Campos, V. Nunes-Souza, M. do C. Vieira, A. P. de A. Boleti, L. A. Rabelo, E. L. Dos Santos and K. de P. Souza, Antioxidant and protective effects of Schinus terebinthifolius Raddi against doxorubicin-induced toxicity, Appl. Biochem. Biotechnol.184 (2018) 869–884; https://doi.org/10.1007/s12010-017-2589-y10.1007/s12010-017-2589-y
- 29. M. C. Jaramillo, G. J. Arango, M. C. Gonzalez, S. M. Robledo and I. D. Velez, Cytotoxicity and anti-leishmanial activity of Annona muricata pericarp, Fitoterapia71 (2000) 183–186; https://doi.org/10.1016/s0367-326x(99)00138-010.1016/S0367-326X(99)00138-0
- 30. C. Y. Ragasa, G. Soriano, O. B. Torres, D. Ming-Jaw and S. Chien-Chang, Acetogenins from Annona muricata, Pharmacogn. J.4 (2012) 32–37; https://doi.org/10.5530/pj.2012.32.710.5530/pj.2012.32.7
- 31. S. Fofana, A. Keita, S. Balde, R. Ziyaev and S. F. Aripova, Alkaloids from leaves of Annona muricata, Chem. Nat. Compd.48 (2012) 714; https://doi.org/10.1007/s10600-012-0363-510.1007/s10600-012-0363-5
- 32. A. V Coria-Téllez, E. N. Obledo-Vázquez, E. Padilla-Camberos, M. González-Ávila and M. Martínez-Velázquez, Bioactivity, nutritional property, and rapid chemical characterization of aqueous extract of Annona muricata leaf from Mexico, Trop. J. Pharm. Res.18 (2019) 611–617; https://doi.org/10.4314/tjpr.v18i3.2410.4314/tjpr.v18i3.24
- 33. F.-R. Chang, C.-C. Liaw, C.-Y. Lin, C.-J. Chou, H.-F. Chiu and Y.-C. Wu, New adjacent bis-tetrahydrofuran annonaceous acetogenins from Annona muricata, Planta Med.69 (2003) 241–246; https://doi.org/10.1055/s-2003-3848510.1055/s-2003-3848512677528
- 34. E. J. Oliveira, M. A. Romero, M. S. Silva, B. A. Silva and I. A. Medeiros, Intracellular calcium mobilization as a target for the spasmolytic action of scopoletin, Planta Med.67 (2001) 605–608; https://doi.org/10.1055/s-2001-1735510.1055/s-2001-1735511582535
- 35. M. B. G. Martins, R. de R. Graf, A. J. Cavalheiro and S. D. Rodrigues, Caracterização anatômica, química e antibacteriana de folhas de Brunfelsia uniflora (manacá) presentes na Mata Atlântica, Braz. J. Pharmacogn.19 (2009) 106–114; https://doi.org/10.1590/S0102-695X200900010002010.1590/S0102-695X2009000100020
- 36. C. Birkner, G. Stapel, S. Leyck, H. Fischer, B. Christ and K. Kesselring, Extraction of hopamidine, Ger. Pat. 3,506,643, 1986.
- 37. A. L. de Almeida, M. L. Beleza, A. Campos, R. L. da Rosa, S. F. de Andrade, V. C. Filho and L. A. N. Nesello, Phytochemical profile and gastroprotective potential of Myrcianthes pungens fruits and leaves, Nutrire42 (2017) Article ID 24 (5 pages); https://doi.org/10.1186/s41110-017-0040-310.1186/s41110-017-0040-3
- 38. S. K. T. Seraglio, M. Schulz, P. Nehring, F. D. Betta, A. C. Valese, H. Daguer, L. V. Gonzaga, R. Fett and A. C. O. Costa, Nutritional and bioactive potential of Myrtaceae fruits during ripening, Food Chem.239 (2018) 649–656; https://doi.org/10.1016/j.foodchem.2017.06.11810.1016/j.foodchem.2017.06.11828873617
- 39. M. F. Muzitano, L. W. Tinoco, C. Guette, C. R. Kaiser, B. Rossi-Bergmann and S. S. Costa, The anti-leishmanial activity assessment of unusual flavonoids from Kalanchoe pinnata, Phytochemistry67 (2006) 2071–2077; https://doi.org/10.1016/j.phytochem.2006.06.02710.1016/j.phytochem.2006.06.02716930642
- 40. M. F. Muzitano, C. A. B. Falcão, E. A. Cruz, M. C. Bergonzi, A. R. Billa, F. F. Vincieri, B. R. Rossi-Bergmann and S. S. Costa, Oral metabolism and efficacy of Kalanchoe pinnata flavonoids in a murine model of cutaneous leishmaniasis, Planta Med.75 (2009) 307–311; https://doi.org/10.1055/s-0028-108838210.1055/s-0028-108838219085683
- 41. A. A. da S. Filho, S. Albuquerque, M. L. A. e Silva, M. N. Eberlin, D. M. Tomazela and J. K. Bastos, Tetrahydrofuran lignans from Nectandra megapotamica with trypanocidal activity, J. Nat. Prod.67 (2004) 42–45; https://doi.org/10.1021/np030269710.1021/np030269714738383
- 42. T. G. Ribeiro, M. A. Chávez-Fumagalli, D. G. Valadares, J. R. Franca, P. S. Lage, M. C. Duarte, P. H. R. Andrade, V. T. Martins, L. E. Costa, A. L. A. Arruda, A. A. G. Faraco, E. A. F. Coelho and R. O. Castilho, Antileishmanial activity and cytotoxicity of Brazilian plants, Exp. Parasitol.143 (2014) 60–68; https://doi.org/10.1016/j.exppara.2014.05.00410.1016/j.exppara.2014.05.00424846006
- 43. C. V. Nakamura, A. O. Santos, M. C. Vendrametto, P. S. Luize B. P. D. Filho, D. A. G. Cortez and T. Ueda-Nakamura, Antileishmanial activity of hydroalcoholic extract and fractions obtained from leaves of Piper regnellii (Miq.) C. DC. var. pallescens (C. DC.), Rev. Bras. Farmacogn.16 (2006) 61–66; https://doi.org/10.1590/S0102-695X200600010001110.1590/S0102-695X2006000100011
- 44. V. dos S. Sales, Á. B. Monteiro, G. de A. Delmondes, E. P. do Nasimento, F. R. S. D. N. de Figuêiredo, C. K. de S. Rodrigues, J. F. E. de Lacerda, C. N. Fernandes, M. de O. Barbosa, A. X. Brasil, S. R. Tintino, M. C. V. Gomez, C. Coronel, H. D. M. Coutinho, J. G. M. da Costa, C. F. B. Felipe, I. R. A. de Menezes and M. R. Kerntopf, Antiparasitic activity and essential oil chemical analysis of the Piper tuberculatum Jacq fruit, Iran. J. Pharm. Res.17 (2018) 268–275.
- 45. F. de L. Moreira, T. B. Riul, M. de L. Moreira, A. C. Pilon, M. Dias-Baruffi, M. S. S. Araújo, N. P. Lopes and A. R. M. de Oliveira, Leishmanicidal effects of piperlongumine (Piplartine) and its putative metabolites, Planta Med. 84 (2018) 1141–1148; https://doi.org/10.1055/a-0614-268010.1055/a-0614-268029763945
- 46. E. Osorio, G. J. Arango, N. Jiménez, F. Alzate, G. Ruiz, D. Gutiérrez, M. A. Paco, A. Giménez and S. Robledo, Antiprotozoal and cytotoxic activities in vitro of Colombian Annonaceae, J. Ethnopharmacol.111 (2007) 630–635; https://doi.org/10.1016/j.jep.2007.01.01510.1016/j.jep.2007.01.01517296281
- 47. M. J. Chan-Bacab and L. M. Peña-Rodríguez, Plant natural products with leishmanicidal activity, Nat. Prod. Rep.18 (2001) 674–688; https://doi.org/10.1039/B100455G10.1039/b100455g11820764
- 48. C. E. S. Carvalho, E. P. C. Sobrinho-Junior, L. M. Brito, L. A. D. Nicolau, T. P. Carvalho, A. K. S. Moura, K. A. F. Rodrigues, S. M. P. Carneiro, D. D. R. Arcanjo, A. M. G. L. Citó and F. A. A. Carvalho, Anti-Leishmania activity of essential oil of Myracrodruon urundeuva (Engl.) Fr. All.: Composition, cytotoxity and possible mechanisms of action, Exp. Parasitol.175 (2017) 59–67; https://doi.org/10.1016/j.exppara.2017.02.01210.1016/j.exppara.2017.02.01228189487
- 49. T. L. de Almeida, J. A. Monteiro, G. K. P. Lopes, L. U. R. Chiavelli, S. M. de O. Santin, C. C. da Silva, V. Kaplum, D. B. Scariot, C. V. Nakamura, A. L. T. G. Ruiz, J. E. de Carvalho, R. T. de Faria and A. M. Pomini, Estudo químico e atividades antiproliferativa, tripanocida e leishmanicida de Maxillaria picta, Quim Nov.37 (2014) 1151–1157; https://doi.org/10.5935/0100-4042.2014017910.5935/0100-4042.20140179
- 50. T. S. Tiuman, T. Ueda-Nakamura, D. A. G. G. Cortez, B. P. D. Filho, J. A. Morgado-Díaz, W. de S. Souza and C. V. Nakamura, Antileishmanial activity of parthenolide, a sesquiterpene lactone isolated from Tanacetum parthenium, Antimicrob. Agents Chemother.49 (2005) 176–182; https://doi.org/10.1128/AAC.49.11.176
- 51. T. F. P. de Mello, H. R. Bitencourt, R. B. Pedroso, S. M. A. Aristides, M. V. C. Lonardoni and T. G. V Silveira, Leishmanicidal activity of synthetic chalcones in Leishmania (Viannia) braziliensis, Exp. Parasitol.136 (2014) 27–34; https://doi.org/10.1016/j.exppara.2013.11.00310.1016/j.exppara.2013.11.00324269198